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Gas Diffusion Electrodes Manufactured by Casting Evaluation as Air Cathodes for Microbial Fuel Cells (MFC)

机译:通过铸造评估制造的气体扩散电极作为用于微生物燃料电池的空气阴极(MFC)

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摘要

One of the most intriguing renewable energy production methods being explored currently is electrical power generation by microbial fuel cells (MFCs). However, to make MFC technology economically feasible, cost efficient electrode manufacturing processes need to be proposed and demonstrated. In this context, VITO has developed an innovative electrode manufacturing process based on film casting and phase inversion. The screening and selection process of electrode compositions was done based on physicochemical properties of the active layer, which in turn maintained a close relation with their composition A dual hydrophilic-hydrophobic character in the active layer was achieved with values of ε hydrophilic up to 10% while ε TOTAL remained in the range 65 wt % to 75 wt %. Eventually, selected electrodes were tested as air cathodes for MFC in half cell and full cell modes. Reduction currents, up to ?0.14 mA·cm 2? at ?100 mV (vs. Ag/AgCl) were reached in long term experiments in the cathode half-cell. In full MFC, a maximum power density of 380 mW·m ?2 was observed at 100 ? external load.
机译:目前正在探索的最有趣的可再生能源生产方法之一是微生物燃料电池(MFC)的电力产生。然而,为了使MFC技术经济上可行,需要提出和证明具有成本效率的电极制造工艺。在这种情况下,Vito基于薄膜铸造和相位反转开发了一种创新的电极制造工艺。基于活性层的物理化学性质的电极组合物的筛选和选择方法,其又与其组合物保持紧密关系,使得在活性层中的双亲水 - 疏水性质,ε亲水的值高达10% ε总仍保持在65wt%至75wt%的范围内。最终,将所选电极作为空气阴极作为MFC的半电池和全细胞模式测试。减少电流,最多?0.14 ma·cm 2?在阴极半细胞中的长期实验中达到100mV(vs.ag / AgCl)。在全MFC中,在100时观察到最大功率密度为380mW·m?2?外部负载。

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